
Bug: webrtc:10138 Change-Id: I8659777820ec7244c1435d71504b0c01fb438192 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/130103 Reviewed-by: Yves Gerey <yvesg@google.com> Reviewed-by: Sebastian Jansson <srte@webrtc.org> Commit-Queue: Artem Titov <titovartem@webrtc.org> Cr-Commit-Position: refs/heads/master@{#27386}
205 lines
7.9 KiB
C++
205 lines
7.9 KiB
C++
/*
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* Copyright 2018 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "test/scenario/network_node.h"
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#include <algorithm>
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#include <vector>
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#include "absl/memory/memory.h"
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#include "rtc_base/numerics/safe_minmax.h"
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namespace webrtc {
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namespace test {
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namespace {
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SimulatedNetwork::Config CreateSimulationConfig(NetworkNodeConfig config) {
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SimulatedNetwork::Config sim_config;
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sim_config.link_capacity_kbps = config.simulation.bandwidth.kbps_or(0);
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sim_config.loss_percent = config.simulation.loss_rate * 100;
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sim_config.queue_delay_ms = config.simulation.delay.ms();
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sim_config.delay_standard_deviation_ms = config.simulation.delay_std_dev.ms();
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sim_config.packet_overhead = config.packet_overhead.bytes<int>();
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sim_config.codel_active_queue_management =
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config.simulation.codel_active_queue_management;
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return sim_config;
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}
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} // namespace
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void NullReceiver::OnPacketReceived(EmulatedIpPacket packet) {}
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ActionReceiver::ActionReceiver(std::function<void()> action)
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: action_(action) {}
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void ActionReceiver::OnPacketReceived(EmulatedIpPacket packet) {
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action_();
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}
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std::unique_ptr<SimulationNode> SimulationNode::Create(
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NetworkNodeConfig config) {
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RTC_DCHECK(config.mode == NetworkNodeConfig::TrafficMode::kSimulation);
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SimulatedNetwork::Config sim_config = CreateSimulationConfig(config);
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auto network = absl::make_unique<SimulatedNetwork>(sim_config);
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SimulatedNetwork* simulation_ptr = network.get();
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return std::unique_ptr<SimulationNode>(
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new SimulationNode(config, std::move(network), simulation_ptr));
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}
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void SimulationNode::UpdateConfig(
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std::function<void(NetworkNodeConfig*)> modifier) {
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modifier(&config_);
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SimulatedNetwork::Config sim_config = CreateSimulationConfig(config_);
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simulated_network_->SetConfig(sim_config);
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}
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void SimulationNode::PauseTransmissionUntil(Timestamp until) {
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simulated_network_->PauseTransmissionUntil(until.us());
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}
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ColumnPrinter SimulationNode::ConfigPrinter() const {
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return ColumnPrinter::Lambda("propagation_delay capacity loss_rate",
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[this](rtc::SimpleStringBuilder& sb) {
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sb.AppendFormat(
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"%.3lf %.0lf %.2lf",
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config_.simulation.delay.seconds<double>(),
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config_.simulation.bandwidth.bps() / 8.0,
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config_.simulation.loss_rate);
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});
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}
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SimulationNode::SimulationNode(
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NetworkNodeConfig config,
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std::unique_ptr<NetworkBehaviorInterface> behavior,
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SimulatedNetwork* simulation)
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: EmulatedNetworkNode(std::move(behavior)),
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simulated_network_(simulation),
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config_(config) {}
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NetworkNodeTransport::NetworkNodeTransport(Clock* sender_clock,
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Call* sender_call)
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: sender_clock_(sender_clock), sender_call_(sender_call) {}
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NetworkNodeTransport::~NetworkNodeTransport() = default;
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bool NetworkNodeTransport::SendRtp(const uint8_t* packet,
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size_t length,
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const PacketOptions& options) {
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int64_t send_time_ms = sender_clock_->TimeInMilliseconds();
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rtc::SentPacket sent_packet;
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sent_packet.packet_id = options.packet_id;
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sent_packet.info.included_in_feedback = options.included_in_feedback;
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sent_packet.info.included_in_allocation = options.included_in_allocation;
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sent_packet.send_time_ms = send_time_ms;
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sent_packet.info.packet_size_bytes = length;
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sent_packet.info.packet_type = rtc::PacketType::kData;
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sender_call_->OnSentPacket(sent_packet);
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Timestamp send_time = Timestamp::ms(send_time_ms);
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rtc::CritScope crit(&crit_sect_);
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if (!send_net_)
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return false;
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rtc::CopyOnWriteBuffer buffer(packet, length,
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length + packet_overhead_.bytes());
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buffer.SetSize(length + packet_overhead_.bytes());
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send_net_->OnPacketReceived(
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EmulatedIpPacket(local_address_, receiver_address_, buffer, send_time));
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return true;
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}
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bool NetworkNodeTransport::SendRtcp(const uint8_t* packet, size_t length) {
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rtc::CopyOnWriteBuffer buffer(packet, length);
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Timestamp send_time = Timestamp::ms(sender_clock_->TimeInMilliseconds());
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rtc::CritScope crit(&crit_sect_);
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buffer.SetSize(length + packet_overhead_.bytes());
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if (!send_net_)
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return false;
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send_net_->OnPacketReceived(
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EmulatedIpPacket(local_address_, receiver_address_, buffer, send_time));
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return true;
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}
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void NetworkNodeTransport::Connect(EmulatedNetworkNode* send_node,
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rtc::IPAddress receiver_ip,
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DataSize packet_overhead) {
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// Only IPv4 address is supported. We don't use full range of IPs in scenario
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// framework and also we need a simple way to convert IP into network_id
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// to signal network route.
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RTC_CHECK_EQ(receiver_ip.family(), AF_INET);
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RTC_CHECK_LE(receiver_ip.v4AddressAsHostOrderInteger(),
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std::numeric_limits<uint16_t>::max());
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rtc::CritScope crit(&crit_sect_);
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send_net_ = send_node;
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receiver_address_ = rtc::SocketAddress(receiver_ip, 0);
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packet_overhead_ = packet_overhead;
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rtc::NetworkRoute route;
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route.connected = true;
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route.local_network_id =
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static_cast<uint16_t>(receiver_ip.v4AddressAsHostOrderInteger());
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route.remote_network_id =
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static_cast<uint16_t>(receiver_ip.v4AddressAsHostOrderInteger());
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std::string transport_name = "dummy";
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sender_call_->GetTransportControllerSend()->OnNetworkRouteChanged(
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transport_name, route);
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}
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CrossTrafficSource::CrossTrafficSource(EmulatedNetworkReceiverInterface* target,
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rtc::IPAddress receiver_ip,
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CrossTrafficConfig config)
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: target_(target),
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receiver_address_(receiver_ip, 0),
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config_(config),
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random_(config.random_seed) {}
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CrossTrafficSource::~CrossTrafficSource() = default;
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DataRate CrossTrafficSource::TrafficRate() const {
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return config_.peak_rate * intensity_;
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}
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void CrossTrafficSource::Process(Timestamp at_time, TimeDelta delta) {
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time_since_update_ += delta;
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if (config_.mode == CrossTrafficConfig::Mode::kRandomWalk) {
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if (time_since_update_ >= config_.random_walk.update_interval) {
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intensity_ += random_.Gaussian(config_.random_walk.bias,
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config_.random_walk.variance) *
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time_since_update_.seconds<double>();
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intensity_ = rtc::SafeClamp(intensity_, 0.0, 1.0);
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time_since_update_ = TimeDelta::Zero();
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}
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} else if (config_.mode == CrossTrafficConfig::Mode::kPulsedPeaks) {
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if (intensity_ == 0 && time_since_update_ >= config_.pulsed.hold_duration) {
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intensity_ = 1;
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time_since_update_ = TimeDelta::Zero();
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} else if (intensity_ == 1 &&
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time_since_update_ >= config_.pulsed.send_duration) {
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intensity_ = 0;
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time_since_update_ = TimeDelta::Zero();
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}
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}
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pending_size_ += TrafficRate() * delta;
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if (pending_size_ > config_.min_packet_size) {
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target_->OnPacketReceived(EmulatedIpPacket(
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rtc::SocketAddress() /*from*/, receiver_address_,
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rtc::CopyOnWriteBuffer(pending_size_.bytes()), at_time));
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pending_size_ = DataSize::Zero();
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}
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}
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ColumnPrinter CrossTrafficSource::StatsPrinter() {
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return ColumnPrinter::Lambda("cross_traffic_rate",
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[this](rtc::SimpleStringBuilder& sb) {
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sb.AppendFormat("%.0lf",
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TrafficRate().bps() / 8.0);
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},
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32);
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}
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} // namespace test
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} // namespace webrtc
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